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UBE3A promotes foam cell formation and counters remyelination by targeting ABCA1 for proteasomal degradation

Author

Listed:
  • Melanie Loix

    (Hasselt University
    University MS Center Hasselt)

  • Sam Vanherle

    (Hasselt University
    University MS Center Hasselt)

  • Laura Bolkaerts

    (Hasselt University
    University MS Center Hasselt)

  • Sanne G. S. Verberk

    (Hasselt University
    University MS Center Hasselt)

  • Mattijs Punt

    (Erasmus University Medical Center
    Erasmus University Medical Center)

  • Flore Wouters

    (Hasselt University
    University MS Center Hasselt)

  • Brecht Moonen

    (Hasselt University
    University MS Center Hasselt)

  • Rob Verhagen

    (Erasmus University Medical Center
    Erasmus University Medical Center)

  • Suzanne A. E. Van Wouw

    (University of Amsterdam
    Amsterdam University Medical Centers
    Amsterdam University Medical Centers)

  • Aldo Jongejan

    (University of Amsterdam)

  • Ben Distel

    (Erasmus University Medical Center
    Erasmus University Medical Center)

  • Ype Elgersma

    (Erasmus University Medical Center
    Erasmus University Medical Center)

  • Mansour Haidar

    (Hasselt University
    University MS Center Hasselt)

  • Noam Zelcer

    (University of Amsterdam
    Amsterdam University Medical Centers
    Amsterdam University Medical Centers)

  • Jerome J. A. Hendriks

    (Hasselt University
    University MS Center Hasselt)

  • Jeroen F. J. Bogie

    (Hasselt University
    University MS Center Hasselt)

Abstract

The accumulation of foamy macrophages is a pathological hallmark of demyelinating brain disorders. Perturbed metabolism and efflux of intracellular lipids underlie the development of a harmful foamy macrophage phenotype in these disorders, yet, the molecular mechanisms underlying this dysregulation are poorly understood. Here, we show that the ubiquitin-proteasome system controls the turnover of the cholesterol efflux transporter ATP-binding cassette A1 (ABCA1) in lipid-loaded macrophages in the brain. We report that accumulation of myelin-derived lipids promotes the abundance and activity of ubiquitin-protein E3 ligase A (UBE3A) in macrophages, which stimulates ABCA1 ubiquitination and subsequent degradation. This boosts cellular lipid accumulation and induces an inflammatory macrophage phenotype that impairs remyelination. We further establish Tat-interacting protein 30 (TIP30), an inhibitor of importin β-mediated nuclear import, as an essential regulator of cytosolic UBE3A levels. Together, our findings identify UBE3A as a driver of foam cell formation and indicate that targeting UBE3A-mediated ABCA1 degradation is a promising strategy to enhance central nervous system repair.

Suggested Citation

  • Melanie Loix & Sam Vanherle & Laura Bolkaerts & Sanne G. S. Verberk & Mattijs Punt & Flore Wouters & Brecht Moonen & Rob Verhagen & Suzanne A. E. Van Wouw & Aldo Jongejan & Ben Distel & Ype Elgersma &, 2025. "UBE3A promotes foam cell formation and counters remyelination by targeting ABCA1 for proteasomal degradation," Nature Communications, Nature, vol. 16(1), pages 1-18, December.
  • Handle: RePEc:nat:natcom:v:16:y:2025:i:1:d:10.1038_s41467-025-62053-w
    DOI: 10.1038/s41467-025-62053-w
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